A large cylindrical water tank 11.5 m in diameter and 13.5 m tall is supported with...
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A large cylindrical water tank 11.5 m in diameter and 13.5 m tall is supported with its base 8.75 m above the ground by a stand as shown in the figure. The water level in the tank is 10.6 m deep, and the density of the water in the tank is 1.00 g/cm. A very small hole is formed at the base of the vertical wall of the tank, and water is squirting out of this hole horizontally. (15 points) 10.6 m N.75m 13,5m AX a) When this water hits the ground, how far (AX) has it traveled horizontally from the hole, assuming no air resistance? b) Non-H section: If we close the valve of the hole, what is the average pressure force acting on the hole? Assume the radius of the hole is 1.00 cm. H section: The pressure force is a function of the depth. Find the total pressure force exerted on the tank wall from the water surface to 5cm below the water surface. A large cylindrical water tank 11.5 m in diameter and 13.5 m tall is supported with its base 8.75 m above the ground by a stand as shown in the figure. The water level in the tank is 10.6 m deep, and the density of the water in the tank is 1.00 g/cm. A very small hole is formed at the base of the vertical wall of the tank, and water is squirting out of this hole horizontally. (15 points) 10.6 m N.75m 13,5m AX a) When this water hits the ground, how far (AX) has it traveled horizontally from the hole, assuming no air resistance? b) Non-H section: If we close the valve of the hole, what is the average pressure force acting on the hole? Assume the radius of the hole is 1.00 cm. H section: The pressure force is a function of the depth. Find the total pressure force exerted on the tank wall from the water surface to 5cm below the water surface.
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Related Book For
College Physics
ISBN: 978-0495113690
7th Edition
Authors: Raymond A. Serway, Jerry S. Faughn, Chris Vuille, Charles A. Bennett
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